Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devices in photonic integrated circuits. In this paper, we show that the out-of-plane losses of pillar-based photonic crystal waveguides can be vastly reduced, even for pillars with a lowvertical index contrast, such as in InP/In-GaAsP/InP technology. These low losses are obtained by creating confinement between the pillars with a polymer layer stack. We show that the spatial frequency component of the Bloch mode in the first Brillouin zone (i.e., the component inside the light cone), is significantly suppressed by the optimized polymer layer stack. © 2009 IEEE
We present 2D FDTD simulations of the coupling from a conventional optical waveguide to a photonic c...
We have fabricated high-quality planar photonic crystal defect waveguides in InP/InGaAsP material. U...
We have fabricated high-quality planar photonic crystal defect waveguides in InP/InGaAsP material. U...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Abstract—Out-of-plane losses are the major issue in the integra-tion of two-dimensional photonic cry...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
We present the fabrication and optical characterization of waveguides in photonic crys-tals based on...
Waveguides based on line defects in pillar photonic crystals have been fabricated in InP/InGaAsP/InP...
In photonic crystal slabs an in-plane photonic crystal is combined with a slab waveguide. Light is t...
Photonic crystal slabs combine a slab waveguide with an in-plane photonic crystal. Light is then con...
Waveguides based on line defects in pillar photonic crystals have been fabricated in InP/InGaAsP/InP...
Waveguides based on line defects in pillar photonic crystals have been fabricated in InP/InGaAsP/InP...
We present 2D FDTD simulations of the coupling from a conventional optical waveguide to a photonic c...
We have fabricated high-quality planar photonic crystal defect waveguides in InP/InGaAsP material. U...
We have fabricated high-quality planar photonic crystal defect waveguides in InP/InGaAsP material. U...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Abstract—Out-of-plane losses are the major issue in the integra-tion of two-dimensional photonic cry...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
Out-of-plane losses are the major issue in the integration of two-dimensional photonic crystal devic...
We present the fabrication and optical characterization of waveguides in photonic crys-tals based on...
Waveguides based on line defects in pillar photonic crystals have been fabricated in InP/InGaAsP/InP...
In photonic crystal slabs an in-plane photonic crystal is combined with a slab waveguide. Light is t...
Photonic crystal slabs combine a slab waveguide with an in-plane photonic crystal. Light is then con...
Waveguides based on line defects in pillar photonic crystals have been fabricated in InP/InGaAsP/InP...
Waveguides based on line defects in pillar photonic crystals have been fabricated in InP/InGaAsP/InP...
We present 2D FDTD simulations of the coupling from a conventional optical waveguide to a photonic c...
We have fabricated high-quality planar photonic crystal defect waveguides in InP/InGaAsP material. U...
We have fabricated high-quality planar photonic crystal defect waveguides in InP/InGaAsP material. U...